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首页> 外文期刊>Nanotoxicology >A genome-wide nanotoxicology screen of Saccharomyces cerevisiae mutants reveals the basis for cadmium sulphide quantum dot tolerance and sensitivity
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A genome-wide nanotoxicology screen of Saccharomyces cerevisiae mutants reveals the basis for cadmium sulphide quantum dot tolerance and sensitivity

机译:酿酒酵母突变体的全基因组纳米毒理学筛选揭示了硫化镉量子点耐受性和敏感性的基础

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摘要

The use of cadmium sulphide quantum dots (CdS QDs) is increasing, particularly in the electronics industry. Their size (1-10nm in diameter) is, however, such that they can be taken up by living cells. Here, a bakers' yeast (Saccharomyces cerevisiae) deletion mutant collection has been exploited to provide a high-throughput means of revealing the genetic basis for tolerance/susceptibility to CdS QD exposure. The deletion of 112 genes, some associated with the abiotic stress response, some with various metabolic processes, some with mitochondrial organization, some with transport and some with DNA repair, reduced the level of tolerance to CdS QDs. A gene ontology analysis highlighted the role of oxidative stress in determining the cellular response. The transformation of sensitive mutants with centromeric plasmids harbouring DNA from a wild type strain restored the wild type growth phenotype when the complemented genes encoded either HSC82, DSK2 or ALD3. The use of these simple eukaryote knock-out mutants for functional toxicogenomic analysis will inform studies focusing on higher organisms.
机译:硫化镉量子点(CdS QD)的使用正在增加,特别是在电子工业中。但是,它们的大小(直径为1-10nm)可以被活细胞吸收。在这里,面包酵母(Saccharomyces cerevisiae)缺失突变体已被利用来提供高通量的手段,揭示了对CdS QD暴露的耐受性/敏感性的遗传基础。缺失112个基因(某些与非生物胁迫反应有关,某些与各种代谢过程有关,某些与线粒体组织有关,有些与运输有关,有些与DNA修复有关),降低了对CdS QD的耐受水平。基因本体分析突出了氧化应激在确定细胞反应中的作用。当互补基因编码HSC82,DSK2或ALD3时,用含有来自野生型菌株的DNA的着丝粒质粒的敏感突变体的转化恢复了野生型生长表型。这些简单的真核生物敲除突变体在功能性毒理基因组学分析中的应用将为专注于高等生物的研究提供信息。

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